高导热氮化硼粒子的加入提高了Y3Al5O12:Ce玻璃磷薄膜的发光度和饱和阈值

IF 4.2 3区 材料科学 Q2 MATERIALS SCIENCE, MULTIDISCIPLINARY Optical Materials Pub Date : 2025-06-01 Epub Date: 2025-03-22 DOI:10.1016/j.optmat.2025.116973
Bingguo Liu , Yanghan Guo , Yangzi Li , Shiqing Pang , Shunzi Li , Peng Xu , Dan Zhao , Carsten Dam-Hansen , Jian Xu , Baoli Du , Ole Bjarlin Jensen
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引用次数: 0

摘要

玻璃内磷薄膜(PiG-film)由于其易于制造和效率高,在高性能激光驱动白光照明方面显示出巨大的潜力。然而,玻璃基体的低导热性可能导致荧光粉的热猝灭,限制了光源的最大光通量。将导热系数高、吸收系数低的氮化硼(BN)嵌入到Y3Al5O12:Ce PiG-film中,促进了传热过程,并调节了激光和荧光的传播。研究了BN粒径和掺杂浓度对表面形貌(孔隙形成)、发光饱和阈值(LST)、光通量和相关色温(CCT)空间分布的影响。分析了光斑约束,得到了发光度。得益于BN有效传热网络的形成,当激光功率密度为19.00 W/mm2时,yag -45- 2%和yag -45- 1%薄膜的发光效率均优于未掺杂薄膜。YAG-45-2掺杂薄膜的LST高于27.04 W/mm2,比未掺杂薄膜的LST高出42%以上。虽然BN粒子对蓝色激光的额外反射降低了CCT空间分布的均匀性,但BN粒子对荧光的散射很强,将荧光发射点(直径)的扩展范围限制在307 ~ 174 μm,在yag -45- 2%的薄膜中获得了1614 lm/mm2的高发光度。这些结果有力地证明了在pigg薄膜中掺入具有高导热系数和低吸收系数的粒子是实现高亮度激光照明的可行策略。
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Enhanced luminous exitance and saturation threshold of Y3Al5O12:Ce phosphor-in-glass films via incorporation of highly thermally conductive boron nitride particles
Phosphor-in-glass film (PiG-film) displays great potential for high performance laser-driven white lighting, benefiting from its facile fabrication and high efficiency. However, the low thermal conductivity of the glass matrix may lead to thermal quenching of phosphors and limit the maximum luminous flux of the light source. Here, boron nitride (BN) with high thermal conductivity and low absorption coefficient was embedded into Y3Al5O12:Ce PiG-film to facilitate the heat-transfer process, and to regulate the propagation of both laser and fluorescence. The influences of BN particle size and doping concentration on surface morphology (pore formation), luminescence saturation threshold (LST), luminous flux, and the spatial distribution of correlated color temperature (CCT) were investigated and correlated. Moreover, the luminescence spot confinement was analyzed and luminous exitance was obtained. Benefiting from the formation of effective BN heat-transfer network, the luminous efficacy of both YAG-45-2 % and YAG-45-1 % films surpass the non-doped one as laser power density >19.00 W/mm2. A LST higher than 27.04 W/mm2 was observed in YAG-45-2 % film, more than 42 % higher than the non-doped one. Though the extra reflection of blue laser by BN particles downgrades the CCT spatial distribution uniformity, the particles strongly scatter the fluorescence and restrict the fluorescence-emitting spot (diameter) expansion from 307 to 174 μm, and a high luminous exitance of 1614 lm/mm2 was achieved in YAG-45-2 % film. These results firmly demonstrate that incorporation of particles with high thermal conductivity and low absorption coefficient in PiG-film is a feasible strategy for achieving high-brightness laser lighting.
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来源期刊
Optical Materials
Optical Materials 工程技术-材料科学:综合
CiteScore
6.60
自引率
12.80%
发文量
1265
审稿时长
38 days
期刊介绍: Optical Materials has an open access mirror journal Optical Materials: X, sharing the same aims and scope, editorial team, submission system and rigorous peer review. The purpose of Optical Materials is to provide a means of communication and technology transfer between researchers who are interested in materials for potential device applications. The journal publishes original papers and review articles on the design, synthesis, characterisation and applications of optical materials. OPTICAL MATERIALS focuses on: • Optical Properties of Material Systems; • The Materials Aspects of Optical Phenomena; • The Materials Aspects of Devices and Applications. Authors can submit separate research elements describing their data to Data in Brief and methods to Methods X.
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